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首页> 外文期刊>Journal of Petroleum Science & Engineering >Foam assisted gas-oil gravity drainage in naturally-fractured reservoirs
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Foam assisted gas-oil gravity drainage in naturally-fractured reservoirs

机译:天然裂隙油藏的泡沫辅助瓦斯重力引流

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This paper introduces an enhanced-oil-recovery concept for naturally-fractured reservoirs. We use foam to improve the gas-oil gravity drainage process in the fractured reservoirs. We developed an expression that approximates the maximum oil rate depending on the injected gas rate and average properties of the foam generated in the fracture, which provides results that are in good agreement with the numerical results. We use two different foam models to simulate foam behavior in the matrix and the fracture. For the fracture we use the model developed by Hirasaki and Lawson (Hirasaki, G.J., Lawson, J.B., 1985. Mechanisms of foam flow in porous media: apparent viscosity in smooth capillaries. SPE J., 176-190), which considers the effects of flowrate, interfacial tension, and foam quality on the foam rheology. For the matrix we use the empirical foam model (mobility reduction model), which scales down the gas mobility based on empirical parameters. It is shown that foam generation in the fracture creates a viscous pressure drop along the fracture that is directly transferred to the oil-bearing matrix and accelerates oil production. It is also shown that gas and water are simultaneously diverted into the matrix via the creation of a horizontal pressure drop between the fracture and the matrix. This has consequences for foam rheology in the fracture as it change the local foam quality along the fracture. The effects of relevant physical parameters on the efficiency of the mechanism are also discussed in the paper.
机译:本文介绍了天然裂缝油藏的强化采油概念。我们使用泡沫来改善裂缝性储层中的瓦斯重力排放过程。我们开发了一个表达式,该表达式根据注入的气体速率和裂缝中生成的泡沫的平均特性来近似最大油速率,该表达式提供的结果与数值结果非常吻合。我们使用两种不同的泡沫模型来模拟基质和裂缝中的泡沫行为。对于骨折,我们使用由Hirasaki和Lawson开发的模型(Hirasaki,GJ,Lawson,JB,1985年。多孔介质中泡沫的流动机理:光滑毛细管中的表观粘度。SPEJ.,176-190),其中考虑了这种影响。流量,界面张力和泡沫质量对泡沫流变性的影响。对于矩阵,我们使用经验泡沫模型(迁移率降低模型),该模型根据经验参数按比例缩小气体迁移率。结果表明,裂缝中泡沫的产生沿裂缝产生了粘滞的压降,该压降被直接转移到含油基质中并加速了采油。还显示出,通过在裂缝和基质之间产生水平压力降,气体和水同时转移到基质中。这会对裂缝中的泡沫流变性产生影响,因为它会改变裂缝中的局部泡沫质量。本文还讨论了相关物理参数对机构效率的影响。

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